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Articles

Influence of Vanadium on the Heat-Affected-Zone Properties of Mild Steel

Pages 228-234 | Published online: 18 Jul 2013

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T. N. Baker. (2009) Processes, microstructure and properties of vanadium microalloyed steels. Materials Science and Technology 25:9, pages 1083-1107.
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N. A. McPherson. (2009) Through process considerations for microalloyed steels used in naval ship construction. Ironmaking & Steelmaking 36:3, pages 193-200.
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K. He & D. V. Edmonds. (2002) Formation of acicular ferrite and influence of vanadium alloying. Materials Science and Technology 18:3, pages 289-296.
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R. C. Cochrane & W. B. Morrison. (1981) Influence of vanadium on transformation characteristics of high-strength line-pipe steels. Metals Technology 8:1, pages 458-465.
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R. Otterberg, R. Sandström & A. Sandberg. (1980) Influence of Widmanstätten ferrite on mechanical properties of microalloyed steels. Metals Technology 7:1, pages 397-408.
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Articles from other publishers (12)

D. V. KUDASHOV, P. P. STEPANOV, E. A. VOLKOVA, L. I. EFRON, S. V. ZHARKOV, K. S. SMETANIN & O. A. BARANOVA. (2022) STUDY OF THE WELDABILITY OF STEELS OF DIFFERENT ALLOYING COMPOSITIONS FOR THE LARGE-DIAMETER PIPES TRANSPORTING HYDROGEN SULPHIDE-CONTAINING GAS. Ferrous Metallurgy. Bulletin of Scientific , Technical and Economic Information 78:1, pages 66-75.
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V. V. Sudin, P. P. Stepanov, V. A. Bozhenov, M. M. Kantor, L. E. Efron, S. V. Zharkov, A. V. Chastukhin & D. A. Ringinen. (2021) Microstructural Features of Low-Alloy Pipeline Steels that Determine Impact Strength of Welded Joint Heat-Affected Zone. Metallurgist 65:5-6, pages 500-516.
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Zhongran Shi, Caifu Yang, Ruizhen Wang, Hang Su, Feng Chai, Juefei Chu & Qingfeng Wang. (2016) Effect of nitrogen on the microstructures and mechanical properties in simulated CGHAZ of vanadium microalloyed steel varied with different heat inputs. Materials Science and Engineering: A 649, pages 270-281.
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Bevis Hutchinson, Jacek Komenda, Gregory S. Rohrer & Hossein Beladi. (2015) Heat affected zone microstructures and their influence on toughness in two microalloyed HSLA steels. Acta Materialia 97, pages 380-391.
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Fang Fang, Qi-long Yong, Cai-fu Yang & Hang Su. (2009) Microstructure and precipitation behavior in HAZ of V and Ti microalloyed steel. Journal of Iron and Steel Research International 16:3, pages 68-72.
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Fang FANG, Qi-long YONG, Cai-fu YANG & Hang SU. (2007) Microstructure and Precipitation Behavior in Heat Affected Zone of Nitrogen-Enhanced Microalloyed Steel Containing V and Ti. Journal of Iron and Steel Research, International 14:5, pages 249-253.
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R. Varughese & A.W. Pense. (1993) Microstructural development in the coarse-grained, heat-affected zone in titanium-vanadium microalloyed HSLA steels. Materials Characterization 30:1, pages 35-43.
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S. Suzuki, G.C. Weatherly & D.C. Houghton. (1987) The response of carbo-nitride particles in hsla steels to weld thermal cycles. Acta Metallurgica 35:2, pages 341-352.
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Eugen Schmidtmann & Ulrike Zeislmair. (1981) Einflu? der thermischen Behandlung beim Schwei?en auf das Aufl?sungs- und Ausscheidungsverhalten von Mikrolegierungselementen in der WEZ von Feinkornbaust?hlen. Archiv f?r das Eisenh?ttenwesen 52:10, pages 399-406.
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R.E. Dolby. 1980. Engineering Applications of Fracture Analysis. Engineering Applications of Fracture Analysis 117 134 .
N.F. Eaton, A.G. Glover & J.T. McGrath. 1978. Advances in Research on the Strength and Fracture of Materials. Advances in Research on the Strength and Fracture of Materials 751 773 .
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